A key point in human movement analysis is measuring the trajectory of a person’s center of mass (CoM). For outdoor applications, differential Global Navigation Satellite Systems (GNSS) can be used for tracking persons since they allow measuring the trajectory and speed of the GNSS antenna with centimeter accuracy. However, the antenna cannot be placed exactly at the person’s CoM, but rather on the head or upper back. Thus, a model is needed to relate the measured antenna trajectory to the CoM trajectory. In this paper we propose to estimate the person’s posture based on measurements obtained from inertial sensors. From this estimated posture the CoM is computed relative to the antenna position and finally fused with the GNSS trajectory info...
High precision Global Navigation Satellite System (GNSS) measurements are becoming more and more pop...
High precision Global Navigation Satellite System (GNSS) measurements are becoming more and more pop...
In this study we present and validate a method to correct velocity and position drift for inertial s...
A key point in human movement analysis is measuring the trajectory of a person’s center of mass (CoM...
A key point in human movement analysis is measuring the trajectory of a person’s center of mass (CoM...
A key point in human movement analysis is measuring the trajectory of a person’s center of mass (CoM...
A key point in human movement analysis is measuring the trajectory of a persons center of mass (CoM)...
In the sport of alpine skiing, knowledge about the centre of mass (CoM) kinematics (i.e. position, v...
In this study we present and validate a method to correct velocity and position drift for inertial s...
In this study we present and validate a method to correct velocity and position drift for inertial s...
For performance analysis in alpine ski racing, an accurate and precise estimation of the centre of m...
Reliable assessment of the performance of alpine skiers is essential. Previous studies have highligh...
For performance analysis in alpine ski racing, an accurate and precise estimation of the centre of m...
In this study we present and validate a method to correct velocity and position drift for inertial s...
Although reliable feedback is crucial to improving the performance of competitive alpine skiers, the...
High precision Global Navigation Satellite System (GNSS) measurements are becoming more and more pop...
High precision Global Navigation Satellite System (GNSS) measurements are becoming more and more pop...
In this study we present and validate a method to correct velocity and position drift for inertial s...
A key point in human movement analysis is measuring the trajectory of a person’s center of mass (CoM...
A key point in human movement analysis is measuring the trajectory of a person’s center of mass (CoM...
A key point in human movement analysis is measuring the trajectory of a person’s center of mass (CoM...
A key point in human movement analysis is measuring the trajectory of a persons center of mass (CoM)...
In the sport of alpine skiing, knowledge about the centre of mass (CoM) kinematics (i.e. position, v...
In this study we present and validate a method to correct velocity and position drift for inertial s...
In this study we present and validate a method to correct velocity and position drift for inertial s...
For performance analysis in alpine ski racing, an accurate and precise estimation of the centre of m...
Reliable assessment of the performance of alpine skiers is essential. Previous studies have highligh...
For performance analysis in alpine ski racing, an accurate and precise estimation of the centre of m...
In this study we present and validate a method to correct velocity and position drift for inertial s...
Although reliable feedback is crucial to improving the performance of competitive alpine skiers, the...
High precision Global Navigation Satellite System (GNSS) measurements are becoming more and more pop...
High precision Global Navigation Satellite System (GNSS) measurements are becoming more and more pop...
In this study we present and validate a method to correct velocity and position drift for inertial s...